利用拉普拉斯网格编辑技术自动调整牙冠

IF 3.3 2区 医学 Q2 ENGINEERING, BIOMEDICAL Journal of the Mechanical Behavior of Biomedical Materials Pub Date : 2024-12-20 DOI:10.1016/j.jmbbm.2024.106878
Oliver Roffmann , Meike Stiesch , Christof Hurschler , Andreas Greuling
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引用次数: 0

摘要

目前,牙种植体修复缺牙是牙科常用的治疗方法。当设计种植体支撑冠的咬合面时,确保牙齿之间的最佳接触(咬合)对患者至关重要。虽然有各种咬合的概念和指导方针,以实现优化咬合,适应咬合表面是具有挑战性的。接触点必须建立在咬合表面的某些区域,而不损害牙齿的美观和咀嚼功能。计算机辅助的自动化建模方法可以协助设计过程,并可以减少对体力劳动的依赖。本研究旨在开发一种建模方法,使咬合表面能够自动适应特定的咬合概念,同时保持自然外观。在本研究中,采用基于扫描的右下颌第一磨牙种植支撑冠的咬合面。根据Ramfjord和Ash (RA)和Thomas (T)的咬合概念确定名义接触点。然后使用拉普拉斯网格编辑根据期望的接触点调整咬合表面的形状。通过有限元接触分析验证了不同力和不同冠材(3Y-TZP和PMMA)的修正结果。接触分析结果表明,高压应力位置与标称接触点位置相对应。与3Y-TZP相比,PMMA的杨氏模量更低,因此反作用力在PMMA冠中分布更均匀。此外,接触点较少的咬合方案显示出更高的每接触面积的最大反作用力。提出的方法能够自动适应(种植支持)冠特定的咬合方案,证明是有价值的牙科CAD。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Automatic adjustment of dental crowns using Laplacian mesh editing
Currently, the restoration of missing teeth by means of dental implants is a common treatment method in dentistry. Ensuring optimal contact between teeth (occlusion) when designing the occlusal surface of an implant-supported crown is crucial for the patient. Although there are various occlusal concepts and guidelines for achieving optimised occlusion, adapting an occlusal surface is challenging. The contact points must be established in certain areas of the occlusal surface without impairing the aesthetics of the teeth and the masticatory function. A computer-aided, automated modelling approach can assist in the design process and can reduce the reliance on manual labour. This study aimed to develop a modelling approach that enables the automatic adaptation of an occlusal surface to specific occlusal concepts while preserving the natural appearance. In this study, the occlusal surface of an implant-supported crown based on a scanned first right mandibular molar was adopted. Nominal contact points were determined based on occlusal concepts by Ramfjord and Ash (RA) and Thomas (T). The shape of the occlusal surface was then adapted concerning the desired contact points using Laplacian mesh editing. The modification results were validated for different forces and crown materials (3Y-TZP and PMMA) using a finite element contact analysis. The contact analysis results showed that locations with high compressive stresses correspond with the locations of the nominal contact points. The reaction forces were more evenly distributed in PMMA crowns, due to the lower Young's modulus of PMMA compared to 3Y-TZP. Furthermore, the occlusal scheme with fewer contact points (RA) showed higher maximum reaction forces per contact area. The presented method enables the automated adaptation of an (implant-supported) crown to specific occlusal schemes, proving to be valuable in dental CAD.
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来源期刊
Journal of the Mechanical Behavior of Biomedical Materials
Journal of the Mechanical Behavior of Biomedical Materials 工程技术-材料科学:生物材料
CiteScore
7.20
自引率
7.70%
发文量
505
审稿时长
46 days
期刊介绍: The Journal of the Mechanical Behavior of Biomedical Materials is concerned with the mechanical deformation, damage and failure under applied forces, of biological material (at the tissue, cellular and molecular levels) and of biomaterials, i.e. those materials which are designed to mimic or replace biological materials. The primary focus of the journal is the synthesis of materials science, biology, and medical and dental science. Reports of fundamental scientific investigations are welcome, as are articles concerned with the practical application of materials in medical devices. Both experimental and theoretical work is of interest; theoretical papers will normally include comparison of predictions with experimental data, though we recognize that this may not always be appropriate. The journal also publishes technical notes concerned with emerging experimental or theoretical techniques, letters to the editor and, by invitation, review articles and papers describing existing techniques for the benefit of an interdisciplinary readership.
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